TLE42644
Low Dropout Fixed Voltage Regulator
TLE42644G
Data Sheet
Rev. 1.1, 2014-07-03
Automotive Power
Low Dropout Fixed Voltage Regulator
1
TLE42644G
Overview
Features
•
Output Voltage 5 V ± 2 % up to Output Currents of 50 mA
•
Output Voltage 5 V ± 3 % up to Output Currents of 100 mA
•
Very Low Dropout Voltage
•
Very Low Current Consumption: typ. 40 µA
•
Output Current Limitation
•
Reverse Polarity Protection
•
Overtemperature Shutdown
•
Wide Temperature Range From -40 °C up to 150 °C
•
Suitable for Use in Automotive Electronics
•
Green Product (RoHS compliant)
•
AEC Qualified
PG-SOT223-4
Description
The TLE42644 is a monolithic integrated low dropout fixed voltage regulator for load currents up to 100 mA. It is
the 1-to-1 replacement product for the TLE4264-2. It is functional compatible to the TLE4264, but has a reduced
quiescent current of typ. 40 µA. The TLE42644 is especially designed for applications requiring very low standby
currents, e.g. with a permanent connection to the car’s battery. The device is available in the small surface
mounted PG-SOT223-4 package and is pin compatible to the TLE4264-2 and the TLE4264. The device is
designed for the harsh environment of automotive applications. Therefore it is protected against overload, short
circuit and overtemperature conditions by the implemented output current limitation and the overtemperature
shutdown circuit. The TLE42644 can be also used in all other applications requiring a stabilized 5 V voltage.
An input voltage up to 45 V is regulated to VQ,nom = 5 V with a precision of ±3 %. An accuracy of ±2 % is kept for
load currents up to 50 mA.
Type
Package
Marking
TLE42644G
PG-SOT223-4
42644
Data Sheet
2
Rev. 1.1, 2014-07-03
TLE42644
Block Diagram
2
Block Diagram
Saturation
Control and
Protection
Circuit
Temperature
Sensor
Input
Ι
Q
Control
Amplifier
Adjustment
Output
Buffer
Bandgap
Reference
GND
GND
AEB02870
Figure 1
Data Sheet
Block Diagram
3
Rev. 1.1, 2014-07-03
TLE42644
Pin Configuration
3
Pin Configuration
3.1
Pin Assignment PG-SOT223-4
GND
4
1
2
Ι
GND
3
Q
AEP02868
Figure 2
Pin Configuration (top view)
3.2
Pin Definitions and Functions PG-SOT223-4
Pin No.
Symbol Function
1
I
Input
block to ground directly at the IC with a ceramic capacitor
2
GND
Ground
3
Q
Output
block to ground with a capacitor close to the IC terminals, respecting the values given
for its capacitance and ESR in “Functional Range” on Page 5
4 / Heat Slug
GND
Ground / Heat Slug
internally connected to leadframe and GND;
connect to GND and heatsink area
Data Sheet
4
Rev. 1.1, 2014-07-03
TLE42644
General Product Characteristics
4
General Product Characteristics
4.1
Absolute Maximum Ratings
Table 1
Absolute Maximum Ratings1)
Tj = -40 °C to 150 °C; all voltages with respect to ground, (unless otherwise specified)
Parameter
Symbol
Values
Unit
Note /
Test Condition
Number
Min.
Typ.
Max.
VI
-30
–
45
V
–
P_4.1.1
VQ
-0.3
–
32
V
–
P_4.1.2
Tj
Tstg
-40
–
150
°C
–
P_4.1.3
-50
–
150
°C
–
P_4.1.4
ESD Absorption
VESD,HBM
-3
–
3
kV
Human Body
Model (HBM)2)
P_4.1.5
ESD Absorption
VESD,CDM
-1500
–
1500
V
Charge Device
Model (CDM)3) at
all pins
P_4.1.6
Input I
Voltage
Output Q
Voltage
Temperature
Junction temperature
Storage temperature
ESD Susceptibility
1) not subject to production test, specified by design
2) ESD susceptibility Human Body Model “HBM” according to AEC-Q100-002 - JESD22-A114
3) ESD susceptibility Charged Device Model “CDM” according to ESDA STM5.3.1
Notes
1. Stresses above the ones listed here may cause permanent damage to the device. Exposure to absolute
maximum rating conditions for extended periods may affect device reliability.
2. Integrated protection functions are designed to prevent IC destruction under fault conditions described in the
data sheet. Fault conditions are considered as “outside” normal operating range. Protection functions are not
designed for continuous repetitive operation.
4.2
Functional Range
Table 2
Functional Range
Parameter
Input voltage
Output Capacitor’s
Requirements for Stability
Data Sheet
Symbol
VI
CQ
Values
Unit
Note /
Test Condition
Number
Min.
Typ.
Max.
5.5
–
40
V
–
P_4.2.1
10
–
–
µF
–
P_4.2.2
5
Rev. 1.1, 2014-07-03
TLE42644
General Product Characteristics
Table 2
Functional Range (cont’d)
Parameter
Symbol
Values
Min.
Typ.
Max.
Unit
Note /
Test Condition
Number
Output Capacitor’s
Requirements for Stability
ESR(CQ)
–
–
2
Ω
1)
P_4.2.3
Junction temperature
Tj
-40
–
150
°C
–
P_4.2.4
1) relevant ESR value at f = 10 kHz
Note: Within the functional or operating range, the IC operates as described in the circuit description. The electrical
characteristics are specified within the conditions given in the Electrical Characteristics table.
4.3
Thermal Resistance
Note: This thermal data was generated in accordance with JEDEC JESD51 standards. For more information, go
to www.jedec.org.
Table 3
Thermal Resistance
Parameter
Symbol
Values
Min.
Typ.
Max.
–
17
–
Junction to Ambient1)
RthJC
RthJA
RthJA
Junction to Ambient1)
Junction to Ambient1)
Unit
Note / Test Condition
Number
K/W
measured to heat slug
P_4.3.1
TLE42644G (PG-SOT223-4)
Junction to Case1)
Junction to Ambient
1)
2)
–
54
–
K/W
FR4 2s2p board
–
139
–
K/W
FR4 1s0p board, footprint P_4.3.3
only3)
P_4.3.2
RthJA
–
73
–
K/W
FR4 1s0p board,
300 mm² heatsink area3)
P_4.3.4
RthJA
–
64
–
K/W
FR4 1s0p board,
600 mm² heatsink area3)
P_4.3.5
1) Not subject to production test, specified by design.
2) Specified RthJA value is according to Jedec JESD51-2,-5,-7 at natural convection on FR4 2s2p board; The Product
(Chip+Package) was simulated on a 76.2 x 114.3 x 1.5 mm³ board with 2 inner copper layers (2 x 70µm Cu, 2 x 35µm Cu).
Where applicable a thermal via array under the exposed pad contacted the first inner copper layer.
3) Specified RthJA value is according to Jedec JESD 51-3 at natural convection on FR4 1s0p board; The Product
(Chip+Package) was simulated on a 76.2 × 114.3 × 1.5 mm3 board with 1 copper layer (1 x 70µm Cu).
Data Sheet
6
Rev. 1.1, 2014-07-03
TLE42644
Electrical Characteristics
5
Electrical Characteristics
5.1
Electrical Characteristics Voltage Regulator
Table 4
Electrical Characteristics
VI = 13.5 V; Tj = -40 °C to 150 °C; all voltages with respect to ground (unless otherwise specified)
Parameter
Symbol
Values
Min.
Typ.
Max.
Unit
Note / Test Condition
Number
Output Q
Output Voltage
VQ
4.9
5.0
5.1
V
5 mA < IQ< 50 mA
6 V < VI < 16 V
P_5.1.1
Output Voltage
VQ
4.85
5.0
5.15
V
5 mA < IQ
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